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    • 1. 发明授权
    • Error flag processor
    • 错误标志处理器
    • US4577319A
    • 1986-03-18
    • US730258
    • 1985-05-06
    • Takashi TakeuchiKeizo NishimuraMasaharu KobayashiKazumasa Oiso
    • Takashi TakeuchiKeizo NishimuraMasaharu KobayashiKazumasa Oiso
    • G06F11/07G11B20/18G06F11/10G11B27/00
    • G06F11/0772G06F11/073G11B20/1809
    • An error flag processor for digital signals includes a memory having an information word frame comprised of signal words and correction words, an error detector for detecting errors in an input signal in units of one frame, a write address circuit for writing into an error flag RAM one error flag for one frame upon detection of an error in the words of the frame, an error correcting circuit for correcting data subjected to de-interleave and a read out of the memory, and read address circuit for reading error flags in units of one frame corresponding to individual words from the memory to the error correcting circuit, whereby the storage requirements for the error flags can be reduced. When old storage regions for correction words in the information word frame memory are used as error flag regions and the error flags are arranged in accordance with the signal word frames, the error flag RAM can be omitted.
    • 用于数字信号的错误标志处理器包括具有由信号字和校正字组成的信息字框的存储器,用于以一帧为单位检测输入信号中的错误的误差检测器,用于写入错误标志RAM的写入地址电路 检测到帧中的错误的一帧的一个错误标志,用于校正经过解交织的数据和读出存储器的纠错电路,以及以1为单位读取错误标志的读地址电路 帧对应于从存储器到纠错电路的单个字,从而可以减少错误标志的存储要求。 当将信息字帧存储器中的校正字的旧存储区域用作错误标志区域并且根据信号字帧布置错误标志时,可以省略错误标志RAM。
    • 3. 发明授权
    • Battery system
    • 电池系统
    • US09136566B2
    • 2015-09-15
    • US13391134
    • 2011-07-27
    • Kenji TakedaKoichi YokouraTakashi Takeuchi
    • Kenji TakedaKoichi YokouraTakashi Takeuchi
    • H01M10/42H01M10/48G01R31/36G01R19/00H01M10/04H02J7/00
    • H01M10/482G01R19/00G01R31/36H01M10/0445H01M10/4207H01M10/4221H01M10/425H01M2010/4271H01M2010/4278H02J7/0021H02J7/0024
    • A battery pack (21A) according to embodiments of the present invention comprises a plurality of battery modules (11A-11D) connected to each other in either one or both of a series connection mode and a parallel connection mode. An identifying information setting section (25) sets identifying information on each of the plurality of battery elements (11A-11D). A connection mode managing section (47) manages the connection mode between the plurality of battery elements (11A-11D) by using the identifying information set by the identifying information setting section (25). The identifying information on each of the plurality of battery elements (11A-11D) is made up of a combination of first identifying information on the potential of the one of the plurality of battery elements (11A-11D) and second identifying information on the battery pack (21A) serving as a superordinate battery element to which the one of the plurality of battery elements (11A-11D) belongs.
    • 根据本发明的实施例的电池组(21A)包括在串联和并联模式中的一个或两个中彼此连接的多个电池模块(11A-11D)。 识别信息设定部(25)在多个电池元件(11A-11D)中设置识别信息。 连接模式管理部分(47)通过使用由识别信息设置部分(25)设置的识别信息来管理多个电池元件(11A-11D)之间的连接模式。 多个电池元件(11A-11D)中的每一个的识别信息由关于多个电池元件(11A-11D)中的一个的电位的第一识别信息和关于电池的第二识别信息的组合构成 作为上述多个电池元件(11A-11D)中的一个所属的上位电池元件的电池组(21A)。
    • 4. 发明授权
    • Radio receiving apparatus
    • 无线电接收装置
    • US08265578B2
    • 2012-09-11
    • US12928824
    • 2010-12-21
    • Takashi Takeuchi
    • Takashi Takeuchi
    • H04B1/10H04K3/00
    • H04B1/1036
    • In a radio receiving apparatus, an analog received signal is converted into a digital received signal. An unwanted wave in an adjacent channel band is rejected, that is adjacent to a passband for the digital received signal. The digital received signal with no unwanted wave is converted into a first demodulated signal. The first demodulated signal is converted into a second demodulated signal in analog form. A noise component is extracted from the first demodulated signal. The second demodulated signal is suppressed under squelch control when a squelch voltage that is a voltage of the noise component after rectification and smoothing becomes equal to or higher than a predetermined threshold level.
    • 在无线电接收装置中,模拟接收信号被转换为数字接收信号。 相邻信道频带中的不想要的波被拒绝,其与数字接收信号的通带相邻。 没有不想要的波的数字接收信号被转换成第一解调信号。 第一解调信号以模拟形式被转换成第二解调信号。 从第一解调信号中提取噪声分量。 当作为整流和平滑后的噪声分量的电压的静噪电压变为等于或高于预定阈值电平时,第二解调信号被抑制在静噪控制下。